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Srinivasa G. Narasimhan

31 accepted papers

2026

VT-Intrinsic: Physics-Based Decomposition of Reflectance and Shading using a Single Visible-Thermal Image Pair

CVPR 2026

Decomposing a scene into its reflectance and shading is a challenge due to the lack of extensive ground-truth data for real-world scenes. We introduce a novel physics-based approach for intrinsic image decomposition using a pair of visible and thermal images. We leverage the principle that light not

Cited by 0SourcecodeScholar
2025

ROADWork: A Dataset and Benchmark for Learning to Recognize, Observe, Analyze and Drive Through Work Zones

ICCV 2025poster

Perceiving and autonomously navigating through work zones is a challenging and under-explored problem. Open datasets for this long-tailed scenario are scarce. We propose the ROADWork dataset to learn to recognize, observe, analyze, and drive through work zones. State-of-the-art foundation models fai…

Cited by 0SourcePDFScholar
2024

A Theory of Joint Light and Heat Transport for Lambertian Scenes

CVPR 2024poster

We present a novel theory that establishes the relationship between light transport in visible and thermal infrared and heat transport in solids. We show that heat generated due to light absorption can be estimated by modeling heat transport using a thermal camera. For situations where heat conducti…

Cited by 3SourcePDFScholar
2024

Projecting Trackable Thermal Patterns for Dynamic Computer Vision

CVPR 2024poster

Adding artificial patterns to objects like QR codes can ease tasks such as object tracking robot navigation and conveying information (e.g. a label or a website link). However these patterns require a physical application and they alter the object's appearance. Conversely projected patterns can temp…

Cited by 1SourcePDFScholar
2024

Shape from Heat Conduction

ECCV 2024oral

"Thermal cameras measure the temperature of objects based on radiation emitted in the infrared spectrum. In this work, we propose a novel shape recovery approach that exploits the properties of heat transport, specifically heat conduction, induced on objects when illuminated using simple light bulbs…

Cited by 1SourcePDFScholar
2024

WALT3D: Generating Realistic Training Data from Time-Lapse Imagery for Reconstructing Dynamic Objects Under Occlusion

CVPR 2024poster

Current methods for 2D and 3D object understanding struggle with severe occlusions in busy urban environments partly due to the lack of large-scale labeled ground-truth annotations for learning occlusion. In this work we introduce a novel framework for automatically generating a large realistic data…

Cited by 2SourcePDFScholar
2023

Analyzing Physical Impacts Using Transient Surface Wave Imaging

CVPR 2023poster

The subtle vibrations on an object's surface contain information about the object's physical properties and its interaction with the environment. Prior works imaged surface vibration to recover the object's material properties via modal analysis, which discards the transient vibrations propagating i…

Cited by 1SourcePDFScholar
2023

Learned Two-Plane Perspective Prior Based Image Resampling for Efficient Object Detection

CVPR 2023poster

Real-time efficient perception is critical for autonomous navigation and city scale sensing. Orthogonal to architectural improvements, streaming perception approaches have exploited adaptive sampling improving real-time detection performance. In this work, we propose a learnable geometry-guided prio…

Cited by 4SourcePDFScholar
2023

Megahertz Light Steering Without Moving Parts

CVPR 2023poster

We introduce a light steering technology that operates at megahertz frequencies, has no moving parts, and costs less than a hundred dollars. Our technology can benefit many projector and imaging systems that critically rely on high-speed, reliable, low-cost, and wavelength-independent light steering…

Cited by 1SourcePDFScholar
2022

Learning Continuous Implicit Representation for Near-Periodic Patterns

ECCV 2022poster

"Near-Periodic Patterns (NPP) are ubiquitous in man-made scenes and are composed of tiled motifs with appearance differences caused by lighting, defects, or design elements. A good NPP representation is useful for many applications including image completion, segmentation, and geometric remapping. B…

2022

WALT: Watch and Learn 2D Amodal Representation From Time-Lapse Imagery

CVPR 2022poster

Current methods for object detection, segmentation, and tracking fail in the presence of severe occlusions in busy urban environments. Labeled real data of occlusions is scarce (even in large datasets) and synthetic data leaves a domain gap, making it hard to explicitly model and learn occlusions. I…

Cited by 24PDFScholar
2021

Exploiting & Refining Depth Distributions With Triangulation Light Curtains

CVPR 2021poster

Active sensing through the use of Adaptive Depth Sensors is a nascent field, with potential in areas such as Advanced driver-assistance systems (ADAS). They do however require dynamically driving a laser / light-source to a specific location to capture information, with one such class of sensor bein…

Cited by 9PDFScholar
2021

TesseTrack: End-to-End Learnable Multi-Person Articulated 3D Pose Tracking

CVPR 2021poster

We consider the task of 3D pose estimation and trackingof multiple people seen in an arbitrary number of camerafeeds. We propose TesseTrack, a novel top-down approachthat simultaneously reasons about multiple individuals' 3Dbody joint reconstructions and associations in space andtime in a single end…

Cited by 135PDFScholar
2020

Active Perception using Light Curtains for Autonomous Driving

ECCV 2020poster

Most real-world 3D sensors such as LiDARs are passive, meaning that they sense the entire environment, while being decoupled from the recognition system that processes the sensor data. In this work, we propose a method for 3D object recognition using light curtains, a resource-efficient active senso…

Cited by 14SourcePDFScholar
2020

TexMesh: Reconstructing Detailed Human Texture and Geometry from RGB-D Video

ECCV 2020poster

We present TexMesh, a novel approach to reconstruct detailed human meshes with high-resolution full-body texture from RGB-D video. TexMesh enables high quality free-viewpoint rendering of humans. Given the RGB frames, the captured environment map, and the coarse per-frame human mesh from RGB-D track…

Cited by 53SourcePDFScholar
2019

A Theory of Fermat Paths for Non-Line-Of-Sight Shape Reconstruction

CVPR 2019oral

We present a novel theory of Fermat paths of light between a known visible scene and an unknown object not in the line of sight of a transient camera. These light paths either obey specular reflection or are reflected by the object's boundary, and hence encode the shape of the hidden object. We prov…

Cited by 215PDFScholar
2019

Agile Depth Sensing Using Triangulation Light Curtains

ICCV 2019oral

Depth sensors like LIDARs and Kinect use a fixed depth acquisition strategy that is independent of the scene of interest. Due to the low spatial and temporal resolution of these sensors, this strategy can undersample parts of the scene that are important (small or fast moving objects), or oversample…

Cited by 28PDFScholar
2019

Multispectral Imaging for Fine-Grained Recognition of Powders on Complex Backgrounds

CVPR 2019oral

Hundreds of materials, such as drugs, explosives, makeup, food additives, are in the form of powder. Recognizing such powders is important for security checks, criminal identification, drug control, and quality assessment. However, powder recognition has drawn little attention in the computer vision…

Cited by 19PDFScholar
2019

Neural RGB(r)D Sensing: Depth and Uncertainty From a Video Camera

CVPR 2019oral

Depth sensing is crucial for 3D reconstruction and scene understanding. Active depth sensors provide dense metric measurements, but often suffer from limitations such as restricted operating ranges, low spatial resolution, sensor interference, and high power consumption. In this paper, we propose a…

Cited by 170PDFScholar
2019

Occlusion-Net: 2D/3D Occluded Keypoint Localization Using Graph Networks

CVPR 2019poster

We present Occlusion-Net, a framework to predict 2D and 3D locations of occluded keypoints for objects, in a largely self-supervised manner. We use an off-the-shelf detector as input (like MaskRCNN) that is trained only on visible key point annotations. This is the only supervision used in this work…

Cited by 92PDFScholar
2018

CarFusion: Combining Point Tracking and Part Detection for Dynamic 3D Reconstruction of Vehicles

CVPR 2018poster

Despite significant research in the area, reconstruction of multiple dynamic rigid objects (eg. vehicles) observed from wide-baseline, uncalibrated and unsynchronized cameras, remains hard. On one hand, feature tracking works well within each view but is hard to correspond across multiple cameras…

Cited by 100SourcePDFScholar
2018

Deep Material-Aware Cross-Spectral Stereo Matching

CVPR 2018poster

Cross-spectral imaging provides strong benefits for recognition and detection tasks. Often, multiple cameras are used for cross-spectral imaging, thus requiring image alignment, or disparity estimation in a stereo setting. Increasingly, multi-camera cross-spectral systems are embedded in active RGBD…

Cited by 74SourcePDFScholar
2018

Programmable Triangulation Light Curtains

ECCV 2018poster

A vehicle on a road or a robot in the field does not need a full-featured 3D depth sensor to detect potential collisions or monitor its blind spot. Instead, it needs to only monitor if any object comes within its near proximity which is an easier task than full depth scanning. We introduce a novel d…

Cited by 51SourcePDFScholar
2018

RANUS: RGB and NIR Urban Scene Dataset for Deep Scene Parsing

RA-L 2018

In this letter, we present a data-driven method for scene parsing of road scenes to utilize single-channel near-infrared (NIR) images. To overcome the lack of data problem in non-RGB spectrum, we define a new color space and decompose the task of deep scene parsing into two subtasks with two separat

Cited by 42SourceScholar
2017

The Geometry of First-Returning Photons for Non-Line-Of-Sight Imaging

CVPR 2017spotlight

Non-line-of-sight (NLOS) imaging utilizes the full 5D light transient measurements to reconstruct scenes beyond the camera's field of view. Mathematically, this requires solving an elliptical tomography problem that unmixes the shape and albedo from spatially-multiplexed measurements of the NLOS sce…

Cited by 107PDFScholar
2016

Simultaneous Estimation of Near IR BRDF and Fine-Scale Surface Geometry

CVPR 2016spotlight

Near-Infrared (NIR) images of most materials exhibit less texture or albedo variations making them beneficial for vision tasks such as intrinsic image decomposition and structured light depth estimation. Understanding the reflectance properties (BRDF) of materials in the NIR wavelength range can be…

Cited by 26PDFScholar